Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Differential Accumulation of Misfolded Prion Strains in Natural Hosts of Prion Diseases

View through CrossRef
Prion diseases, also known as transmissible spongiform encephalopathies (TSEs), are a group of neurodegenerative protein misfolding diseases that invariably cause death. TSEs occur when the endogenous cellular prion protein (PrPC) misfolds to form the pathological prion protein (PrPSc), which templates further conversion of PrPC to PrPSc, accumulates, and initiates a cascade of pathologic processes in cells and tissues. Different strains of prion disease within a species are thought to arise from the differential misfolding of the prion protein and have different clinical phenotypes. Different strains of prion disease may also result in differential accumulation of PrPSc in brain regions and tissues of natural hosts. Here, we review differential accumulation that occurs in the retinal ganglion cells, cerebellar cortex and white matter, and plexuses of the enteric nervous system in cattle with bovine spongiform encephalopathy, sheep and goats with scrapie, cervids with chronic wasting disease, and humans with prion diseases. By characterizing TSEs in their natural host, we can better understand the pathogenesis of different prion strains. This information is valuable in the pursuit of evaluating and discovering potential biomarkers and therapeutics for prion diseases.
Title: Differential Accumulation of Misfolded Prion Strains in Natural Hosts of Prion Diseases
Description:
Prion diseases, also known as transmissible spongiform encephalopathies (TSEs), are a group of neurodegenerative protein misfolding diseases that invariably cause death.
TSEs occur when the endogenous cellular prion protein (PrPC) misfolds to form the pathological prion protein (PrPSc), which templates further conversion of PrPC to PrPSc, accumulates, and initiates a cascade of pathologic processes in cells and tissues.
Different strains of prion disease within a species are thought to arise from the differential misfolding of the prion protein and have different clinical phenotypes.
Different strains of prion disease may also result in differential accumulation of PrPSc in brain regions and tissues of natural hosts.
Here, we review differential accumulation that occurs in the retinal ganglion cells, cerebellar cortex and white matter, and plexuses of the enteric nervous system in cattle with bovine spongiform encephalopathy, sheep and goats with scrapie, cervids with chronic wasting disease, and humans with prion diseases.
By characterizing TSEs in their natural host, we can better understand the pathogenesis of different prion strains.
This information is valuable in the pursuit of evaluating and discovering potential biomarkers and therapeutics for prion diseases.

Related Results

Membrane-anchored PrPSc is the trigger for prion synaptotoxicity
Membrane-anchored PrPSc is the trigger for prion synaptotoxicity
ABSTRACT The mechanism by which prions composed of PrPSc cause the neuropathological aberrations characteristic of prion diseases remains elusive. Previous studies have...
Integrated Organotypic Slice Cultures and RT-QuIC (OSCAR) Assay: Implications for Translational Discovery in Protein Misfolding Diseases
Integrated Organotypic Slice Cultures and RT-QuIC (OSCAR) Assay: Implications for Translational Discovery in Protein Misfolding Diseases
AbstractProtein misfolding is a key pathological event in neurodegenerative diseases like prion diseases, synucleinopathies, and tauopathies that are collectively termed protein mi...
Possible Treatments for COVID Vaccine Induced Prion Disease
Possible Treatments for COVID Vaccine Induced Prion Disease
Many COVID-19 “vaccines" are considered bioweapons and are known to have the ability to cause prion disease. Prion inducing agents have been researched extensively as potential bio...
Perception, Cognition, and Response: A Recognition Systems Analysis of Avian Egg Rejection
Perception, Cognition, and Response: A Recognition Systems Analysis of Avian Egg Rejection
To claim and understand the uniqueness of any physical, chemical, or biological system, it is necessary to use the same set of approaches, tools, and analyses to probe other syst...
Capillary electromigration based techniques in diagnostics of prion protein caused diseases
Capillary electromigration based techniques in diagnostics of prion protein caused diseases
Transmissible spongiform encephalopathies are a group of fatal neurodegenerative diseases with long incubation time. This group includes Creutzfeld‐Jakob disease, kuru, scrapie, ch...
Modeling Prion Transport in a Tunneling Nanotube
Modeling Prion Transport in a Tunneling Nanotube
We develop a model for simulating prion transport in a tunneling nanotube (TNT). We simulate the situation when two cells, one of which is infected, are connected by a TNT. We cons...

Back to Top